DocumentCode
2766999
Title
Adaptive distributed parameter systems identification with enforceable identifiability conditions and reduced order spatial differentiation
Author
Orlov, Yuri ; Bentsman, Joseph
Author_Institution
Dept. of Electron. & Telecommun., CICESE, Ensenada, Mexico
Volume
4
fYear
1998
fDate
16-18 Dec 1998
Firstpage
4016
Abstract
Presents synthesis of adaptive identifiers for distributed parameter systems (DPS) described by partial differential equations (PDEs) of parabolic and hyperbolic type. The features of the PDE setting are utilized to obtain the not directly intuitive parameter estimation algorithms that use spatial derivatives of the output data with the order reduced from that of the highest spatial plant derivative. The plant parameter estimates are computed in terms of their orthogonal expansion through the integration of the adjustable identifier parameters. In this regard, the approach of the paper is in the spirit of finite dimensional observer realization in terms of integrating rather than differentiating the output data, only applied to the spatial rather than temporal domain. The constructively enforceable identifiability conditions, formulated in terms of the sufficiently rich input signals referred to as generators of persistent excitation, are shown to guarantee the existence of a unique zero steady state for the parameter errors. Under such inputs, the adjustable parameters in the adaptive identifiers proposed are shown to converge in L2 to their nominal space-varying values guaranteeing the pointwise convergence of their orthogonal expansions, which represent plant parameter estimates, to the actual plant parameters
Keywords
adaptive systems; convergence; differentiation; distributed parameter systems; multidimensional systems; observers; parameter estimation; partial differential equations; adaptive distributed parameter systems; enforceable identifiability conditions; finite dimensional observer; hyperbolic equations; orthogonal expansion; orthogonal expansions; pointwise convergence; reduced order spatial differentiation; spatial derivatives; Adaptive control; Adaptive systems; Convergence; Distributed parameter systems; Industrial engineering; Measurement errors; Parameter estimation; Partial differential equations; Signal generators; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 1998. Proceedings of the 37th IEEE Conference on
Conference_Location
Tampa, FL
ISSN
0191-2216
Print_ISBN
0-7803-4394-8
Type
conf
DOI
10.1109/CDC.1998.761926
Filename
761926
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